Abdelgawad Fatma Alzahra M, El-Hawary Seham S, Abd El-Kader Essam M, Alshehri Saad Ali, Rabeh Mohamed Abdelaaty, El-Mosallamy Aliaa E M K, El Raey Mohamed A, El Gedaily Rania A
Department of Pharmacognosy, Faculty of Pharmacy, Heliopolis University, Cairo 11785, Egypt.
Department of Pharmacognosy, Faculty of Pharmacy, Cairo University, Giza 11562, Egypt.
Plants (Basel). 2023 Jul 29;12(15):2813. doi: 10.3390/plants12152813.
Plant secondary metabolites are key components for new, safe and effective drugs. Ethanolic extract of Roxb. Sweet (ME) aerial parts were used for biosynthesis of sustainable green zinc oxide nanoparticles (ZnO NPs) with an average particle size 6.80 ± 1.47 nm and zeta potential -19.7 mV. Both transmission electron microscopy and X-ray diffraction assay confirmed the hexagonal shape of ZnO NPs. Phenolic ingredients in ME were identified using LC-ESI-MS/MS-MRM revealing the identification of chlorogenic acid, gallic acid, caffeic acid, rutin, coumaric acid, vanillin, naringenin, quercetin, ellagic acid, 3.4-dihydroxybenzoic acid, methyl gallate, kaempferol, ferulic acid, syringic acid, and luteolin. The major compound was chlorogenic acid at concentration of 1803.84 μg/g. The antiviral activity of ME, ZnO NPs, and combination of ME with ZnO NPs against coronavirus 229E were investigated. ZnO NPs had superior antiviral effect against coronavirus 229E than ME while their combination showed the highest anti-coronavirus 229E effect, with 50% inhibition concentration (IC) of 5.23 ± 0.18 µg/mL and 50% cytotoxic concentration (CC) of 138.49 ± 0.26 µg/mL while the selectivity index (SI) was 26.47. The current study highlighted the possible novel anti-coronavirus 229E activity of green ZnO NPs synthesized from . More studies are needed to further investigate this antiviral activity to be utilized in future biomedical and environmental applications.
植物次生代谢产物是新型、安全且有效的药物的关键成分。采用萝芙木地上部分的乙醇提取物用于生物合成可持续的绿色氧化锌纳米颗粒(ZnO NPs),其平均粒径为6.80±1.47纳米,zeta电位为-19.7毫伏。透射电子显微镜和X射线衍射分析均证实了ZnO NPs的六边形形状。利用液相色谱-电喷雾串联质谱-多反应监测法(LC-ESI-MS/MS-MRM)鉴定了乙醇提取物中的酚类成分,结果显示鉴定出了绿原酸、没食子酸、咖啡酸、芦丁、香豆酸、香草醛、柚皮素、槲皮素、鞣花酸、3,4-二羟基苯甲酸、没食子酸甲酯、山奈酚、阿魏酸、丁香酸和木犀草素。主要化合物为绿原酸,浓度为1803.84微克/克。研究了乙醇提取物、ZnO NPs以及乙醇提取物与ZnO NPs的组合对冠状病毒229E的抗病毒活性。ZnO NPs对冠状病毒229E的抗病毒效果优于乙醇提取物,而它们的组合显示出最高的抗冠状病毒229E效果,50%抑制浓度(IC)为5.23±0.18微克/毫升,50%细胞毒性浓度(CC)为138.49±0.26微克/毫升,则选择性指数(SI)为26.47。当前研究突出了由萝芙木合成的绿色ZnO NPs可能具有的新型抗冠状病毒229E活性。需要更多研究来进一步探究这种抗病毒活性,以便在未来的生物医学和环境应用中加以利用。